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衰老小鼠心肌肌浆网-线粒体钙交换异常。

Defective sarcoplasmic reticulum-mitochondria calcium exchange in aged mouse myocardium.

机构信息

Cardiología, Hospital Universitari Vall d'Hebron, Institut de Recerca, Universitat Autònoma de Barcelona, Barcelona, Spain.

Centro Nacional de Investigaciones Cardiovasculares, Madrid, Spain.

出版信息

Cell Death Dis. 2014 Dec 18;5(12):e1573. doi: 10.1038/cddis.2014.526.

Abstract

Mitochondrial alterations are critically involved in increased vulnerability to disease during aging. We investigated the contribution of mitochondria-sarcoplasmic reticulum (SR) communication in cardiomyocyte functional alterations during aging. Heart function (echocardiography) and ATP/phosphocreatine (NMR spectroscopy) were preserved in hearts from old mice (>20 months) with respect to young mice (5-6 months). Mitochondrial membrane potential and resting O2 consumption were similar in mitochondria from young and old hearts. However, maximal ADP-stimulated O2 consumption was specifically reduced in interfibrillar mitochondria from aged hearts. Second generation proteomics disclosed an increased mitochondrial protein oxidation in advanced age. Because energy production and oxidative status are regulated by mitochondrial Ca2+, we investigated the effect of age on mitochondrial Ca2+ uptake. Although no age-dependent differences were found in Ca2+ uptake kinetics in isolated mitochondria, mitochondrial Ca2+ uptake secondary to SR Ca2+ release was significantly reduced in cardiomyocytes from old hearts, and this effect was associated with decreased NAD(P)H regeneration and increased mitochondrial ROS upon increased contractile activity. Immunofluorescence and proximity ligation assay identified the defective communication between mitochondrial voltage-dependent anion channel and SR ryanodine receptor (RyR) in cardiomyocytes from aged hearts associated with altered Ca2+ handling. Age-dependent alterations in SR Ca2+ transfer to mitochondria and in Ca2+ handling could be reproduced in cardiomyoctes from young hearts after interorganelle disruption with colchicine, at concentrations that had no effect in aged cardiomyocytes or isolated mitochondria. Thus, defective SR-mitochondria communication underlies inefficient interorganelle Ca2+ exchange that contributes to energy demand/supply mistmach and oxidative stress in the aged heart.

摘要

线粒体的改变在衰老过程中对疾病易感性的增加起着至关重要的作用。我们研究了线粒体-肌浆网(SR)通讯在衰老过程中心肌细胞功能改变中的作用。与年轻小鼠(5-6 个月)相比,老年小鼠(>20 个月)的心脏功能(超声心动图)和 ATP/磷酸肌酸(NMR 光谱)得以保留。年轻和老年心脏的线粒体中,线粒体膜电位和静息状态下的 O2 消耗相似。然而,在老年心脏的纤维间线粒体中,最大 ADP 刺激的 O2 消耗特异性降低。第二代蛋白质组学揭示了衰老过程中线粒体蛋白氧化的增加。由于能量产生和氧化状态受线粒体 Ca2+调节,我们研究了年龄对线粒体 Ca2+摄取的影响。尽管在分离的线粒体中,Ca2+摄取动力学没有年龄依赖性差异,但 SR Ca2+释放引起的线粒体 Ca2+摄取在老年心脏的心肌细胞中显著减少,并且这种作用与 NAD(P)H 再生减少和增加的线粒体 ROS 相关,增加收缩活性。免疫荧光和接近连接测定鉴定了老年心脏心肌细胞中线粒体电压依赖性阴离子通道和 SR ryanodine 受体(RyR)之间的通讯缺陷,这与 Ca2+处理改变有关。在浓度为 colchicine 对老年心肌细胞或分离的线粒体没有影响的情况下,用 colchicine 破坏细胞器间的联系后,可在年轻的心肌细胞中再现 SR Ca2+向线粒体的转移和 Ca2+处理的年龄依赖性改变。因此,在衰老心脏中,SR-线粒体通讯的缺陷导致了细胞器间 Ca2+交换的效率低下,这导致了能量需求/供应的不匹配和氧化应激。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d673/4454162/9c5da6e4dccf/cddis2014526f1.jpg

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